Li Hong, He Zengyong, Lu Guihua, Lee Sung Chul, Alonso Jose, Ecker Joseph R, Luan Sheng
Department of Plant and Microbial Biology, University of California, Berkeley, California 94720, USA.
Plant Cell. 2007 Aug;19(8):2403-16. doi: 10.1105/tpc.107.053579. Epub 2007 Aug 17.
Chromatin-based silencing provides a crucial mechanism for the regulation of gene expression. We have identified a WD40 domain cyclophilin, CYCLOPHILIN71 (CYP71), which functions in gene repression and organogenesis in Arabidopsis thaliana. Disruption of CYP71 resulted in ectopic activation of homeotic genes that regulate meristem development. The cyp71 mutant plants displayed dramatic defects, including reduced apical meristem activity, delayed and abnormal lateral organ formation, and arrested root growth. CYP71 was associated with the chromatin of target gene loci and physically interacted with histone H3. The cyp71 mutant showed reduced methylation of H3K27 at target loci, consistent with the derepression of these genes in the mutant. As CYP71 has close homologs in eukaryotes ranging from fission yeast to human, we propose that it serves as a highly conserved histone remodeling factor involved in chromatin-based gene silencing in eukaryotic organisms.
基于染色质的基因沉默为基因表达调控提供了一种关键机制。我们鉴定出了一种WD40结构域亲环素,亲环素71(CYP71),它在拟南芥的基因抑制和器官发生中发挥作用。CYP71的破坏导致了调控分生组织发育的同源异型基因的异位激活。cyp71突变体植株表现出显著缺陷,包括顶端分生组织活性降低、侧生器官形成延迟和异常以及根生长停滞。CYP71与靶基因位点的染色质相关,并与组蛋白H3发生物理相互作用。cyp71突变体在靶位点显示出H3K27甲基化减少,这与这些基因在突变体中的去抑制一致。由于CYP71在从裂殖酵母到人类的真核生物中具有密切的同源物,我们提出它作为一种高度保守的组蛋白重塑因子参与真核生物中基于染色质的基因沉默。